Proton sensitivity of rat cerebellar granule cell GABAA receptors: dependence on neuronal development
- 1 January 2001
- journal article
- Published by Wiley in The Journal of Physiology
- Vol. 530 (2) , 219-233
- https://doi.org/10.1111/j.1469-7793.2001.0219l.x
Abstract
The effect of GABAA receptor development in culture on the modulation of GABA-induced currents by external H+ was examined in cerebellar granule cells using whole-cell and single-channel recording. Equilibrium concentration-response curves revealed a lower potency for GABA between 11 and 12 days in vitro (DIV) resulting in a shift of the EC50 from 10.7 to 2.4 uM. For granule cells before 11 DIV, the peak GABA-activated current was inhibited at low external pH and enhanced at high pH with a pKa of 6.6. For the steady-state response, low pH was inhibitory with a pKa of 5.56. After 11 DIV, the peak GABA-activated current was largely pH insensitive; however, the steady-state current was potentiated at low pH with a pKa of 6.84. Single GABA-activated ion channels were recorded from outside-out patches of granule cell bodies. At pH 5.4-9.4, single GABA channels exhibited multiple conductance states occurring at 22-26, 16-17 and 12-14 pS. The conductance levels were not significantly altered over the time period of study, nor by changing the external H+ concentration. Two exponential functions were required to fit the open-time frequency histograms at both early (< 11 DIV) and late (> 11 DIV) development times at each H+ concentration. The short and long open time constants were unaffected either by the extracellular H+ concentration or by neuronal development. The distribution of all shut times was fitted by the sum of three exponentials designated as short, intermediate and long. At acidic pH, the long shut time constant decreased with development as did the relative contribution of these components to the overall distribution. This was concurrent with an increase in the mean probability of channel opening. In conclusion, this study demonstrates in cerebellar granule cells that external pH can either reduce, have no effect on, or enhance GABA-activated responses depending on the stage of development, possibly related to the subunit composition of the GABAA receptors. The mode of interaction of H+ at the single-channel level and implications of such interactions at cerebellar granule cell GABAA receptors are discussed.Keywords
This publication has 60 references indexed in Scilit:
- Glycine receptors and GABAA receptor alpha1 and gamma2 subunits during the development of mouse hypoglossal nucleusEuropean Journal of Neuroscience, 2004
- Different sensitivities of human and rat ρ1 GABA receptors to extracellular pHNeuropharmacology, 2000
- Insensitivity to anaesthetic agents conferred by a class of GABAA receptor subunitNature, 1997
- The ρ1 GABA receptor cloned from rat retina is down-modulated by protonsNeuroReport, 1996
- The α1 and α6 Subunits Can Coexist in the Same Cerebellar GABAA Receptor Maintaining Their Individual Benzodiazepine‐Binding SpecificitiesJournal of Neurochemistry, 1996
- Proton Modulation of Functionally Distinct GABA A Receptors in Acutely Isolated Pyramidal Neurons of Rat HippocampusNeuropharmacology, 1996
- Cerebellar granule cells in vitro recapitulate the in vivo pattern of GABAA-receptor subunit expressionDevelopmental Brain Research, 1995
- The regulation and modulation of pH in the nervous systemProgress in Neurobiology, 1990
- Cloned GABA receptors are maintained in a stable cell line: allosteric and channel propertiesEuropean Journal of Pharmacology: Molecular Pharmacology, 1990
- Postsynaptic fall in intracellular pH induced by GABA-activated bicarbonate conductanceNature, 1987